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February 14, 2026ChemistrySelect0 citations

Acoustic and Functional Properties of PLA‐Walnut Biocomposites

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TMTomás Jesús Madera‐SantanaEPEmilio Pérez‐PachecoMDMario Adrián de Atocha Dzul‐Cervantes

Key Points

  • The aim is to develop and characterize biodegradable biocomposites using polylactic acid reinforced with walnut shell particles.
  • Fabrication of composite specimens via compression molding with walnut shell loadings of 10% to 50%
  • Conducted analyses including SEM, DSC, TGA, tensile and impact tests, and AE monitoring
  • Assessment of mechanical properties and thermal stability under varying walnut shell content
  • Addition of walnut shell reduced tensile strength and maximum elongation
  • Biocomposites maintained acceptable stiffness at intermediate loadings
  • Exhibited multi-stage thermal degradation, stable up to approximately 200°C
  • Transition from ductile to brittle fracture behavior with increased reinforcement content

Abstract

ABSTRACT The aim of this study is to develop and characterize biodegradable biocomposites based on polylactic acid (PLA) reinforced with walnut shell particles. Composite specimens were fabricated via compression molding with walnut shell loadings ranging from 10% to 50%. A comprehensive suite of analyses was conducted, including scanning electron microscopy (SEM), differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), tensile and impact mechanical tests, and acoustic emission (AE) monitoring to elucidate fracture mechanisms. Results demonstrated that the addition of walnut shell reduced tensile strength and maximum elongation, while maintaining acceptable stiffness at intermediate loadings. Thermally, the biocomposites exhibited multi‐stage degradation and remained stable up to approximately 200°C. AE results indicated a transition from ductile to brittle fracture behavior as the reinforcement content increased. In conclusion, PLA/walnut biocomposites present a balanced combination of functional performance and sustainability, making them promising candidates for biodegradable packaging, agricultural applications, and low‐load structural components.

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Cite This Study

Madera‐Santana et al. (2026) studied this question.

synapsesocial.com/papers/699011712ccff479cfe581f4https://doi.org/10.1002/slct.202504138
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